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Study of tunnel fires during construction using a model scale tunnel

机译:使用模型比例尺隧道研究施工期间的隧道火灾

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The paper presents a study on the characteristics of tunnel fires during construction. A model-scale tunnel was built and fire tests were conducted. The tunnel consists of an inclined access tunnel and a horizontal main tunnel. The main tunnel has two dead ends (excavation faces) and the only opening is from one side of the access tunnel. Propane gas burner and the fibre board soaked with the heptane were used as fuels. The flame characteristics, O-2 and CO volume fraction and gas temperature were measured and recorded. Two typical characteristics of self-extinguishment and smoke spread were found in the tunnel fires during construction. Results indicate that when a fire occurs in the horizontal main tunnel, the critical equivalence ratio for the occurrence of self-extinguishment is within 0.28-1.38 for the propane gas burner and 1.11-3.6 for the fibre board soaked with heptane. The difference is related to the burning behavior of the different fuels used. The fire location in the horizontal tunnel also has a significant influence on the fire development. A well-ventilated fire at the center of the horizontal tunnel becomes under-ventilated due to vitiation when it is located at the closed end of the horizontal tunnel. Besides, when a fire occurs at the closed end of the horizontal main tunnel, the stratification of smoke is destroyed after hitting the closed end, and then the smoke seems to spread over the entire cross section of the tunnel. The smoke spread velocity is found to be proportional to the ventilation rate. However, when a fire occurs at the closed end of the inclined access tunnel (lower end), the fire does not self-extinguish, even when the ventilation rate is 0 m(3)/s. The corresponding smoke spread velocity is higher than that in the horizontal main tunnel. The outcomes of this study provide new experimental information that contributes to improve the understanding of characteristics of tunnel fires during construction and can help firefighters to make better decisions during the rescue processes.
机译:本文对隧道施工过程中的火灾特征进行了研究。建造了一个模型规模的隧道并进行了防火测试。该隧道由倾斜通道和水平主隧道组成。主通道有两个死角(开挖面),唯一的开口是从通道的一侧开口。丙烷气体燃烧器和浸有庚烷的纤维板用作燃料。测量并记录火焰特性,O-2和CO体积分数以及气体温度。在施工期间的隧道火灾中,发现了自熄和烟雾扩散的两个典型特征。结果表明,当水平主隧道发生火灾时,丙烷气体燃烧器发生自熄的临界当量比在0.28-1.38范围内,庚烷浸透的纤维板在1.11-3.6范围内。差异与所用不同燃料的燃烧行为有关。水平隧道中的火灾位置也对火灾的发展有重大影响。水平隧道中央的通风良好时,位于水平隧道封闭端的通风良好,通风不良。此外,当水平主隧道的封闭端发生火灾时,烟雾的分层撞击到封闭端后会被破坏,然后烟雾似乎会散布在整个隧道的横截面上。发现烟雾扩散速度与通风速率成正比。但是,在倾斜通道的封闭端(下端)发生火灾时,即使通风率为0 m(3)/ s,也不会自熄。相应的烟气传播速度高于水平主隧道内的烟气传播速度。这项研究的结果提供了新的实验信息,有助于增进对施工过程中隧道火灾特征的理解,并有助于消防员在营救过程中做出更好的决策。

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